Accurate electronic band gap of pure and functionalized graphane from GW calculations
Materials Science
2015-05-13 v1
Abstract
Using the GW approximation, we study the electronic structure of the recently synthesized hydrogenated graphene, named graphane. For both conformations, the minimum band gap is found to be direct at the point, and it has a value of 5.4 eV in the stable chair conformation, where H atoms attach C atoms alternatively on opposite sides of the two dimensional carbon network. In the meta-stable boat conformation the energy gap is 4.9 eV. Then, using a supercell approach, the electronic structure of graphane was modified by introducing either an hydroxyl group or an H vacancy. In this last case, an impurity state appears at about 2 eV above the valence band maximum.
Cite
@article{arxiv.0903.0310,
title = {Accurate electronic band gap of pure and functionalized graphane from GW calculations},
author = {S. Lebegue and M. Klintenberg and O. Eriksson and M. I. Katsnelson},
journal= {arXiv preprint arXiv:0903.0310},
year = {2015}
}
Comments
Submited to Physical Review Letters